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A complete system to generate electrical noise with arbitrary power spectral density

机译:生成具有任意功率谱密度的电气噪声的完整系统

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Reliability and performance of electronic devices are significantly dependent on their noise rejection capability that is usually investigated since their early production stage as well as during the scheduled maintenance. To this aim, white noise sources are mostly available on the market and usually to the purpose, whereas the use of generators capable of producing coloured noise (actually, very uncommon) should be advisable in most of applications. If arbitrary waveform generators (AWGs) are taken into account, either transient signals in single shot generation mode or periodic signals in continuous generation mode can only be produced due to the finite available memory; unfortunately, both modes are not suitable to emulate noise. To overcome the considered limitations, this work presents the design and implementation of a coloured noise generator that offers the possibility of tailoring the noise spectral content to the desired application. As it can be expected, performance of the generator changes according to different hardware selections; with specific regard to the proposed implementation, it performs as good as state of art solutions in terms of both bandwidth and flexibility. It is composed of a digital section implemented on field programmable gate arrays (FPGA) and a digital-to-analogue converter (DAC) mandated to generate the desired analogue output. The bandwidth of the generated noise can be selected up to a maximum of 50 MHz while the evolution of power spectral density versus frequency can be defined with a resolution equal to 0.4% of the bandwidth. Thanks to suitable digital signal processing techniques, spurious components laying outside the selected bandwidth are hardly attenuated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:电子设备的可靠性和性能在很大程度上取决于其噪声抑制能力,该噪声抑制能力通常是从其早期生产阶段以及计划维护期间开始进行调查的。为了这个目的,市场上通常都可以买到白噪声源,并且通常是为此目的而使用的,而在大多数应用中,建议使用能够产生彩色噪声(实际上非​​常罕见)的发生器。如果考虑任意波形发生器(AWG),则由于有限的可用内存,只能产生单发生成模式下的瞬态信号或连续生成模式下的周期信号。不幸的是,两种模式都不适合模拟噪声。为了克服所考虑的限制,这项工作提出了有色噪声发生器的设计和实现,该发生器提供了将噪声频谱内容调整为所需应用程序的可能性。可以预料,发生器的性能会根据不同的硬件选择而变化。尤其是针对所建议的实现,它在带宽和灵活性方面都可以与最新的解决方案媲美。它由在现场可编程门阵列(FPGA)上实现的数字部分和授权产生所需模拟输出的数模转换器(DAC)组成。生成的噪声的带宽可以选择为最大50 MHz,而功率谱密度随频率的变化可以用等于带宽的0.4%的分辨率来定义。由于采用了合适的数字信号处理技术,几乎不会衰减位于选定带宽之外的杂散分量。 (C)2015 Elsevier Ltd.保留所有权利。

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